1
IAT (IISER) 2025
MCQ (Single Correct Answer)
+4
-1

$$ \text { What are the major products formed in the following reaction sequence? } $$

IAT (IISER) 2025 Chemistry - Hydrocarbons Question 1 English
A
IAT (IISER) 2025 Chemistry - Hydrocarbons Question 1 English Option 1
B
IAT (IISER) 2025 Chemistry - Hydrocarbons Question 1 English Option 2
C
IAT (IISER) 2025 Chemistry - Hydrocarbons Question 1 English Option 3
D
IAT (IISER) 2025 Chemistry - Hydrocarbons Question 1 English Option 4
2
IAT (IISER) 2025
MCQ (Single Correct Answer)
+4
-1

$$ \text { What is the major product in the reaction sequence given below? } $$

IAT (IISER) 2025 Chemistry - Compounds Containing Nitrogen Question 1 English
A
IAT (IISER) 2025 Chemistry - Compounds Containing Nitrogen Question 1 English Option 1
B
IAT (IISER) 2025 Chemistry - Compounds Containing Nitrogen Question 1 English Option 2
C
IAT (IISER) 2025 Chemistry - Compounds Containing Nitrogen Question 1 English Option 3
D

IAT (IISER) 2025 Chemistry - Compounds Containing Nitrogen Question 1 English Option 4

3
IAT (IISER) 2025
MCQ (Single Correct Answer)
+4
-1

Compound $\mathbf{I}$ undergoes hydroboration-oxidation reaction with $\left(\mathrm{BH}_3\right)_2$ followed by treatment with $\mathrm{H}_2 \mathrm{O}_2$ and aqueous NaOH to produce another compound II, which upon oxidation with $\mathrm{CrO}_3$ gives 2,3-dimethyl-cyclohexanone as the product. What is the structure of $\mathbf{I}$ ?

A
IAT (IISER) 2025 Chemistry - Hydrocarbons Question 2 English Option 1
B
IAT (IISER) 2025 Chemistry - Hydrocarbons Question 2 English Option 2
C
IAT (IISER) 2025 Chemistry - Hydrocarbons Question 2 English Option 3
D
IAT (IISER) 2025 Chemistry - Hydrocarbons Question 2 English Option 4
4
IAT (IISER) 2025
MCQ (Single Correct Answer)
+4
-1

The work done when one mole of an ideal gas expands at constant temperature $T$ from volume $V$ to $2 V$ (in two equal steps of volume in a linear fashion) is $\frac{7}{12} R T$. How much more work would be done by the gas if it expands in three equal steps?

[ $R$ is the universal gas constant]

A

$\frac{1}{30} \mathrm{R} T$

B

$\frac{3}{8} \mathrm{R} T$

C

$\frac{3}{4} \mathrm{R} T$

D

$-\mathrm{R} T \ln \left(\frac{1}{15}\right)$

IAT (IISER) Papers

All year-wise previous year question papers